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Effects of hydrogen annealing and codoping (Mn, Fe, Ni, Ga, Y) of nanocrystalline Cu-doped ZnO dilute magnetic semiconductor

机译:氢铜掺杂ZnO稀磁半导体的氢退火和共掺杂(Mn,Fe,Ni,Ga,Y)的影响

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摘要

Zinc oxide (ZnO) codoped with Cu and M ions (M = Mn, Fe, Ni, Ga, Y) powders were synthesised by simultaneous thermal co-decomposition of a mixture of zinc and metal complexes. The synthesised chemical formula for the prepared solid solution is Zn0.97Cu0.01M0.02O. X-ray diffraction (XRD) analysis confirms the formation of single nanocrystalline structure of the as-prepared powders, thus, both Cu and M ions were incorporated into ZnO lattice forming solid solutions. Magnetic measurements reveal that all the as-synthesised doped ZnO powders gained partial (RT-FM) properties but with different strength and BH-behaviour depends on the nature of the doping (M). Furthermore, H-2 post-treatment was subsequently carried out and it was found that the observed RT-FM is enhanced. Very interestingly, in case of Ni dopant, the whole powder becomes completely ferromagnetic with coercivity (H-c), remanence (M-r) and saturation magnetisation (M-s) of 133.6 Oe, 1.086 memu/g and 4.959 memu/g, respectively. The value of Ms was increased by similar to 95% in comparison with as-prepared.
机译:通过同时热共分解锌和金属络合物的混合物,合成了共掺有Cu和M离子(M = Mn,Fe,Ni,Ga,Y)的氧化锌(ZnO)。所制备的固溶体的合成化学式为Zn0.97Cu0.01M0.02O。 X射线衍射(XRD)分析证实了所制备粉末的单纳米晶体结构的形成,因此,Cu和M离子都掺入了ZnO晶格中形成固溶体。磁性测量表明,所有合成的掺杂ZnO粉末均具有部分(RT-FM)性能,但强度不同,BH行为取决于掺杂(M)的性质。此外,随后进行了H-2后处理,发现观察到的RT-FM增强了。非常有趣的是,在掺入镍的情况下,整个粉末变成完全铁磁性,矫顽力(H-c),剩磁(M-r)和饱和磁化强度(M-s)分别为133.6 Oe,1.086 memu / g和4.959 memu / g。与所制备的相比,Ms的值增加了约95%。

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